Litcius/Paper detail

Dynamical photon sphere and time evolving shadow around black holes with temporal accretion

Yasutaka Koga, Nobuyuki Asaka, Masashi Kimura, Kazumasa Okabayashi

2022Physical review. D/Physical review. D.31 citationsDOIOpen Access PDF

Abstract

A photon sphere is known as the geometrical structure that shapes a black hole shadow. The mechanism is well understood for static or stationary black hole spacetimes such as the Schwarzschild and the Kerr spacetimes. In this paper, we investigate and explicitly specify a photon sphere that shapes a black hole shadow in a dynamical spacetime while taking the global structure of the spacetime into account. We consider dynamical and eternal black hole cases of the Vaidya spacetime, which represents a spherically symmetric black hole with accreting null dust. First, we numerically show that there are the dynamical photon sphere and photon orbits corresponding to the shadow edge in a moderate accretion case. Second, the photon spheres are derived analytically in special cases. Finally, we discuss the relation between our photon sphere and the several notions defined as a photon sphere generalization.

Topics & Concepts

Photon spherePhysicsSchwarzschild radiusSpacetimeBlack hole (networking)PhotonShadow (psychology)Event horizonClassical mechanicsSchwarzschild metricWhite holeRotating black holeSpherically symmetric spacetimeAccretion (finance)Quantum mechanicsCharged black holeAstrophysicsGeneral relativityQuantumQuantum gravityQuantum field theory in curved spacetimeGravitational collapsePsychologyPsychotherapistRouting (electronic design automation)Computer networkLink-state routing protocolRouting protocolComputer scienceAstrophysical Phenomena and ObservationsPulsars and Gravitational Waves ResearchExperimental and Theoretical Physics Studies
Dynamical photon sphere and time evolving shadow around black holes with temporal accretion | Litcius